Difference between revisions of "Main Page"
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<li>[[Main Page/Coupled Motion|Coupled Oscillatory and Rotational Motion]] </li> | <li>[[Main Page/Coupled Motion|Coupled Oscillatory and Rotational Motion]] </li> | ||
<li>[[Main Page/Millikan|Determination of the Electric Charge Unit ''e'' : The Millikan Oil Drop Experiment]] </li> | <li>[[Main Page/Millikan|Determination of the Electric Charge Unit ''e'' : The Millikan Oil Drop Experiment]] </li> | ||
− | <li> [[Main Page/Thermionic|Thermionic Emission]] | + | <li> [[Main Page/Thermionic|Thermionic Emission]]</li> |
<li> [[Main Page/Excitation Potentials|The Excitation Potentials of Mercury]] </li> | <li> [[Main Page/Excitation Potentials|The Excitation Potentials of Mercury]] </li> | ||
<li> [[Main Page/Interferometer|The Michelson Interferometer ]] </li> | <li> [[Main Page/Interferometer|The Michelson Interferometer ]] </li> |
Revision as of 10:21, 18 July 2011
Undergraduate Physics @ York University
Department of Physics and Astronomy | |
Toronto, Ontario, Canada | |
phas@yorku.ca | |
416-736-5249 |
BPHS 4090
- Transmitted Light Microscopy Sep 20
- Contrast Modes in Microscopy Sep 27
- Light Induced Chloroplast Translocation Oct 4
- Optical Tweezers of Onion Cells Oct 18
- In-Vivo Spectroscopy Nov 1
- Lysozyme Crystallization Oct 25 / Nov 15
- The Electrical Properties of Chara Nov 22
- Mapping a binding site using NMR spectroscopy Nov 29
PHYS 3220
- Measurement of the Gravitation Constant G: The Cavendish Experiment
- A Measurement of the Velocity of Light: The Foucault-Michelson Experiment
- Coupled Oscillatory and Rotational Motion
- Determination of the Electric Charge Unit e : The Millikan Oil Drop Experiment
- Thermionic Emission
- The Excitation Potentials of Mercury
- The Michelson Interferometer
- The Visible Spectrum of Hydrogen
- Radioactive Decays
- Particle Tracking Simulation
- Rutherford Scattering I